A finite difference numerical model, which can correctly consider dispersion effect of waves over a slowly varying water depth, is developed for the simulation of tsunami propagation. The present model employs a linear Boussinesq-type wave equation that can be solved more easily than typical Boussinesq equations. In the present model numerical dispersion is minimized by controlling the dispersion-correction parameter determined by the time step, grid size and local water depth. In order to examine the applicability of the present model to dispersive waves, the propagation of tsunamis is simulated for an initial water surface displacement of Gaussian shape for the cases of several constant water depths and a submerged circular shoal. The num...
The variational Boussinesq equations derived by Klopman et. al. (2005) con-verse mass, momentum and ...
A numerical model based on the mild slope equation is applied to reproduce the propagation of small ...
24 pages, 23 figures, 1 table, 27 references.A simplified nonlinear dispersive system of BBM-type, i...
A finite difference numerical model, which can correctly consider dis-persion effect of waves over a...
The physical dispersion of linear Boussinesq equations can be replaced by the numerical dispersion o...
This thesis uses numerical simulations to assess the most suitable model type for simulating dispers...
The nonlinear shallow water model is widely used in the study of tsunami propagation, but an increas...
Abstract The nonlinear dispersive model based on the forced Korteweg-de Vries equation (fKdV) is dev...
A simplified one-dimensional method is proposed to estimate the height of the leading wave of transo...
In this study, a modified dispersion-correction scheme describing tsunami propagation on variable wa...
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We derive fully nonlinear, weakly dispersive model equations for propagation of surface gravity wave...
The variational Boussinesq equations derived by Klopman et. al. (2005) con-verse mass, momentum and ...
In this study, a numerical modeling system based on the dispersion-correction finite difference sche...
A finite difference model has been developed for the simulation of storm waves propagating in coasta...
The variational Boussinesq equations derived by Klopman et. al. (2005) con-verse mass, momentum and ...
A numerical model based on the mild slope equation is applied to reproduce the propagation of small ...
24 pages, 23 figures, 1 table, 27 references.A simplified nonlinear dispersive system of BBM-type, i...
A finite difference numerical model, which can correctly consider dis-persion effect of waves over a...
The physical dispersion of linear Boussinesq equations can be replaced by the numerical dispersion o...
This thesis uses numerical simulations to assess the most suitable model type for simulating dispers...
The nonlinear shallow water model is widely used in the study of tsunami propagation, but an increas...
Abstract The nonlinear dispersive model based on the forced Korteweg-de Vries equation (fKdV) is dev...
A simplified one-dimensional method is proposed to estimate the height of the leading wave of transo...
In this study, a modified dispersion-correction scheme describing tsunami propagation on variable wa...
????????? ????????? ????????? ???????????? ???????????? ?????? ??????????????? ?????? ???????????? ?...
We derive fully nonlinear, weakly dispersive model equations for propagation of surface gravity wave...
The variational Boussinesq equations derived by Klopman et. al. (2005) con-verse mass, momentum and ...
In this study, a numerical modeling system based on the dispersion-correction finite difference sche...
A finite difference model has been developed for the simulation of storm waves propagating in coasta...
The variational Boussinesq equations derived by Klopman et. al. (2005) con-verse mass, momentum and ...
A numerical model based on the mild slope equation is applied to reproduce the propagation of small ...
24 pages, 23 figures, 1 table, 27 references.A simplified nonlinear dispersive system of BBM-type, i...